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The comparison of measured impedance of the bladder tissue with the computational modeling results

机译:膀胱组织阻抗测量值与计算模型结果的比较

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Introduction: The electrical impedance spectroscopy technique can be used to measure the electrical impedance of the human bladder tissue, for differentiating pathological changes in the urothelium. Methods: In this study, the electrical impedance spectroscopy technique and then, a numerical technique, finite element analysis (FEA) were used to model the electrical properties of this tissue to predict the impedance spectrum of the normal and malignant areas of this organ. Results: After determining and comparing the modeled data with the experimental results, it is believed that there are some factors that may affect the measurement results. Thus, the effect of inflammation, edema, changes in the applied pressure over the probe and the distensible property of the bladder tissue were considered. Furthermore, the current distribution inside the human bladder tissue was modeled in normal and malignant cases using the FEA. This model results showed that very little of the current actually flows through the urothelium and much of the injected current flows through the connective tissue beneath the urothelium. Conclusion: The results of the models do not explain the measurements results. In conclusion, there are many factors, which may account for discrepancies between the measured and modeled data.
机译:简介:电阻抗光谱技术可用于测量人体膀胱组织的电阻抗,以区分尿路上皮的病理变化。方法:在这项研究中,使用电阻抗光谱技术,然后使用数值技术,有限元分析(FEA)对组织的电学特性进行建模,以预测该器官正常和恶性区域的阻抗谱。结果:在确定建模数据并将其与实验结果进行比较之后,可以认为某些因素可能会影响测量结果。因此,考虑了炎症,水肿,探针上施加压力的变化以及膀胱组织的可扩张特性的影响。此外,在正常和恶性情况下,使用FEA对人膀胱组织内部的电流分布进行建模。该模型结果表明,几乎没有电流实际流经尿道上皮,而注入的大部分电流流经尿道上皮下的结缔组织。结论:模型的结果不能解释测量结果。总之,有许多因素可能会解释测量数据和建模数据之间的差异。

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